首页> 外文会议>IFIP WG 5.5/SOCOLNET Advanced Doctoral Conference on Computing, Electrical and Industrial Systems >Performance Assessment of Tank Fluid Purging and Night Cooling as Overheating Prevention Techniques for Photovoltaic-Thermal (PV-T) Solar Water Heating Systems
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Performance Assessment of Tank Fluid Purging and Night Cooling as Overheating Prevention Techniques for Photovoltaic-Thermal (PV-T) Solar Water Heating Systems

机译:储罐流体冲洗和夜间冷却作为光伏热(PV-T)太阳能热水系统的过热预防技术的性能评估

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摘要

Tank fluid purging and night cooling are two overheating prevention techniques with potential to prevent photovoltaic-thermal collectors from experiencing temperatures capable of undermining their longevity and commercial appeal. Both techniques are readily available, inexpensive but inherently wasteful to use. Dynamic numerical simulations were conducted to determine the primary energy efficiency and the level of protection afforded by these techniques in active residential grid-connected solar domestic hot water systems. Also evaluated was the use of occupancy rate information, possible via so-called "smart systems", to complement the techniques. The results revealed better performances for systems using stagnation control schemes relative to those not using them. Also, night cooling was shown to be unable to prevent overheating reliably while tank fluid purging proved to be more apt but resulted in substantial waste of water annually, which was slightly reduced by combining it with night cooling, which in turn proved to be the most energy efficient solution.
机译:储罐流体冲洗和夜间冷却是两种防止过热的技术,有可能防止光伏集热器承受的温度会破坏其使用寿命和商业吸引力。两种技术都是容易获得,便宜的,但是固有地浪费使用。进行了动态数值模拟,以确定这些技术在主动式居民并网太阳能家用热水系统中的一次能源效率和保护水平。还评估了占用率信息的使用,可以通过所谓的“智能系统”来补充这些技术。结果表明,与不使用停滞控制方案的系统相比,使用停滞控制方案的系统具有更好的性能。此外,事实证明,夜间冷却不能可靠地防止过热,而事实证明,罐内液体的冲洗更容易,但每年会浪费大量的水,与夜间冷却相结合,则可以将其略为减少,而事实证明,夜间冷却是最主要的方法。节能解决方案。

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